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Brain Research
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September 10, 1990
Increased midbrain dopaminergic cell activity following 2'CH3-MPTP-induced dopaminergic cell loss: an in vitro electrophysiological study
G L Bernardini, S G Speciale, D C German
Neuroscience
|
July 1, 1984
Electrophysiological properties of mouse dopamine neurons: in vivo and in vitro studies
M K Sanghera, M E Trulson, D C German
Brain Research
|
September 24, 1976
Corticomotoneuronal connections of precentral cells detected by postspike averages of EMG activity in behaving monkeys
E E Fetz, P D Cheney, D C German
Brain Research
|
October 27, 1978
Anatomic and pharmacologic differences between two types of aversive midbrain stimulation
R S Kiser, R M Lebovitz, D C German
Neuroscience
|
November 1, 1987
Axonal and transneuronal transport in the transmission of neurological disease: potential role in system degenerations, including Alzheimer's disease
C B Saper, B H Wainer, D C German
Clinical Pharmacology and Therapeutics
|
January 1, 1989
Oral dipyridamole increases plasma adenosine levels in human beings
D C German, N M Kredich, T D Bjornsson
Brain Research Bulletin
|
March 1, 1988
Anatomical and electrophysiological characterization of presumed dopamine-containing neurons within the supramammillary region of the rat
P D Shepard, G A Mihailoff, D C German
Journal of Neural Transmission. General Section
|
January 1, 1991
Amphetamine-induced and spontaneous release of dopamine from A9 and A10 cell dendrites: an in vitro electrophysiological study in the mouse
G L Bernardini, X Gu, E Viscardi, et al.
European Journal of Pharmacology
|
February 8, 1980
Effects of chronic desipramine treatment on rat brain noradrenergic responses to alpha-adrenergic drugs
B A McMillen, W Warnack, D C German, et al.
Academic Medicine : Journal of the Association of American Medical Colleges
|
September 21, 2000
Vanderbilt University School of Medicine
G S Gotterer, G Bolian, D C German, et al.
Page
of 11
Search research articles
Search
Showing results (41-50 of 102) with videos related to
Sort By:
Page
of 11
Brain Research
|
September 10, 1990
Increased midbrain dopaminergic cell activity following 2'CH3-MPTP-induced dopaminergic cell loss: an in vitro electrophysiological study
G L Bernardini, S G Speciale, D C German
Neuroscience
|
July 1, 1984
Electrophysiological properties of mouse dopamine neurons: in vivo and in vitro studies
M K Sanghera, M E Trulson, D C German
Brain Research
|
September 24, 1976
Corticomotoneuronal connections of precentral cells detected by postspike averages of EMG activity in behaving monkeys
E E Fetz, P D Cheney, D C German
Brain Research
|
October 27, 1978
Anatomic and pharmacologic differences between two types of aversive midbrain stimulation
R S Kiser, R M Lebovitz, D C German
Neuroscience
|
November 1, 1987
Axonal and transneuronal transport in the transmission of neurological disease: potential role in system degenerations, including Alzheimer's disease
C B Saper, B H Wainer, D C German
Clinical Pharmacology and Therapeutics
|
January 1, 1989
Oral dipyridamole increases plasma adenosine levels in human beings
D C German, N M Kredich, T D Bjornsson
Brain Research Bulletin
|
March 1, 1988
Anatomical and electrophysiological characterization of presumed dopamine-containing neurons within the supramammillary region of the rat
P D Shepard, G A Mihailoff, D C German
Journal of Neural Transmission. General Section
|
January 1, 1991
Amphetamine-induced and spontaneous release of dopamine from A9 and A10 cell dendrites: an in vitro electrophysiological study in the mouse
G L Bernardini, X Gu, E Viscardi, et al.
European Journal of Pharmacology
|
February 8, 1980
Effects of chronic desipramine treatment on rat brain noradrenergic responses to alpha-adrenergic drugs
B A McMillen, W Warnack, D C German, et al.
Academic Medicine : Journal of the Association of American Medical Colleges
|
September 21, 2000
Vanderbilt University School of Medicine
G S Gotterer, G Bolian, D C German, et al.
Page
of 11